Min. Order: | 100 Set/Sets |
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Payment Terms: | T/T |
Supply Ability: | 20,000 |
Place of Origin: | Zhejiang |
Location: | Ningbo, Zhejiang, China (Mainland) |
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Business Type: | Manufacturer |
Means of Transport: | Ocean, Air, Land |
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Brand Name: | ANYINGJIE |
Automobile Friction: | ceramic |
Size: | Standard Size |
Type: | Brakepads |
Quality: | Oem Product |
Quantity Guarrantee: | Fast delivery |
Production Capacity: | 20,000 |
Packing: | Carton |
Delivery Date: | 30days |
Iterm | WVA21348 ceramic disk brake pad manufacturer |
Model | DSS-D333-4106032G92 |
size | 161*49.8*17mm |
Front/rear axle | Front |
car model | NISSAN |
material | semi-metallic, ceramic, less-metallic, none-asbestos |
General information of our brake pads:
Materials:None-asbestos, semi-metallic, ceramic, less-metallic.
2.Pollution -free (no heavy metals, asbestos and other harmful substances ).
3.High quality brake pad featuring with stable friction coefficient,none noise,none-asbestos,none-dust,long using life,reasonable wearing rate
4.Surface finished: paint, powder coat; electronic paint.
5.100% crucial dimension,crack detection
6.No noise,long life, about 30,000-50,000 km.
7. Reasonable price, good quality , prompt delivery, precision-machined
8.Be able to pass the E-mark authentication, TS16949 ,ISO 9001 certificate
9. Complete models for different vehicles(passenger cars,lgiht truck,heavy truck,bus)
10.Manufacture according to customer's requirment,drawings.
11.Good after market service ,solve your problem
Ceramic Composite brake pads are extremely quiet, and deliver exceptional braking performance over a wide range of driving conditions. The Ceramic Composite braking material provides extreme stopping power when "cold" – right out of the driveway, or "hot" – after miles of all-out mountain highway. Ceramic Composite material is formed using high-strength ceramic fibers and non-ferrous metal filaments bonded at extreme pressure and temperature. Ductile metal-filaments produce a friction material with moderate base CoF (coefficient of friction) for optimal initial "bite", while durable heat resistant ceramic fibers and polymeric binders reduce thermal pad decomposition and out-gassing that contribute to high temperature brake "fade". The non-ferrous metal filament matrix provides high thermal mass and ideal thermal conductivity to quickly conduct energy away from the pad-rotor interface for fast thermal recovery. Lower operating temperatures reduce rotor wear and risk of deformation or warping.